Purification device for carbon emission reduction

By setting up a connecting cover and an extension cover in the carbon emission reduction and purification device, and using an electric push rod and a hot air fan to dry the activated carbon adsorbent, the problem of humid activated carbon affecting the adsorption effect is solved, and the filter anti-blocking and adsorption efficiency is improved.

CN223112701UActive Publication Date: 2025-07-18JIANGSU CARBON CONTROL TECH CO LTD
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Patent Information

Application Number
CN202422308058.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-07-18
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

In the existing carbon emission reduction and purification devices, the humid activated carbon adsorption layer affects the adsorption effect, resulting in clogging of the filter and a decrease in adsorption efficiency.

Method used

By setting up a connecting cover and an extension cover, the connecting cover is driven into the fixed cover by using an electric push rod, and the activated carbon adsorbent is dried by a hot air fan, and the adsorbent is flattened with a vibrating motor to achieve rapid drying and reuse of humid activated carbon.

Benefits of technology

Effectively prevent filter clogging, ensure adsorption effect, extend the service life of the device, and improve purification efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a purification device for carbon emission reduction, which relates to the technical field of carbon emission reduction and comprises a purification box, a frame is fixedly connected in the purification box, and a plurality of connecting covers for placing activated carbon adsorbents are embedded in the upper surface of the frame. An extension cover is inserted into one side of the connecting cover, the surfaces of the connecting cover and the extension cover are hollowed out, the connecting cover is arranged, the connecting cover is filled with an activated carbon adsorbent for adsorption treatment when air passes through, and then an electric push rod is used for driving the connecting cover to ascend to enter a fixed cover; then the hot-air blower arranged on the fixing cover is started to generate hot air, the hot air passes through the activated carbon adsorbent in the connecting cover from top to bottom, the wet activated carbon adsorbent can be dried, repeated use is facilitated, and the adsorption effect is guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of carbon emission reduction, in particular to a purification device for carbon emission reduction. Background Art

[0002] Carbon emission reduction refers to reducing the emissions of carbon dioxide (CO2) in the atmosphere through various means. The purpose of carbon emission reduction is to reduce the negative impact of human activities on the climate system and reduce the concentration of greenhouse gases.

[0003] Therefore, a purification device for carbon emission reduction, with the publication number: CN220834767U. When this device is in use, first, start the fan to discharge the gas into the interior of the purification box through the intake pipe. Then, start the water pump to spray the water in the water tank through the nozzles below, thereby realizing the dust removal work of the gas. The water after dust removal can enter the collection box through the drain holes at the bottom, and the gas after dust removal can pass through the upper filter screen and the activated carbon adsorption layer for sequential filtration and adsorption work. The gas after adsorption and filtration can be discharged through the upper outlet pipe. At the same time, during long-term use, the filter screen inside will become blocked. At this time, start the drive motor to make the rotating rod drive the cam to rotate. During the rotation of the cam, it can cyclically knock the upper filter screen, effectively preventing the filter screen from being blocked.

[0004] However, due to the sprayed water mist, when the gas after dust removal rises, there will be a certain amount of water vapor remaining inside. The remaining water vapor will penetrate into the activated carbon adsorption layer when passing through the activated carbon adsorption layer as the gas rises, thereby causing the filter screen and the activated carbon adsorption layer to become wet, and the wet activated carbon adsorption layer will affect the adsorption effect. Summary of the Utility Model

[0005] The purpose of the utility model is to solve the problems existing in the prior art, and to propose a purification device for carbon emission reduction.

[0006] To achieve the above object, the utility model adopts the following technical solutions: A purification device for carbon emission reduction, including a purification box, a frame is fixedly connected inside the purification box, a plurality of connecting covers for placing activated carbon adsorbents are embedded on the upper surface of the frame, an extension cover is inserted on one side of the connecting cover, and the surfaces of the connecting cover and the extension cover are both provided with hollow settings. Two parallelly distributed screws are rotatably connected inside the purification box and are respectively arranged at the upper and lower positions of the frame. A slider inserted into the inner wall of the purification box is threadedly connected to the screw. A fixed cover is fixedly connected to the bottom surface of the slider at the upper position. A hot air blower is arranged on the top of the fixed cover, and a movable cover is inserted on one side of the fixed cover. The inner side walls of the fixed cover and the movable cover are slidably connected to the outer side walls of the connecting cover and the extension cover. The top edge of the slider at the lower position is flexibly connected to an electric push rod. The telescopic end of the electric push rod is fixedly connected with two symmetrically arranged electric telescopic rods. The telescopic end of the electric telescopic rod is fixedly connected with an insertion block. An insertion frame inserted with the two insertion blocks is fixedly connected to the bottom of the outer cover of the connecting cover.

[0007] Preferably, a plurality of spring rods are connected between the connecting cover and the extension cover, and between the fixed cover and the movable cover.

[0008] Preferably, an elastic cloth is connected between the tops of the fixed cover and the movable cover.

[0009] Preferably, two racks are symmetrically and fixedly connected to the top of the outer cover of the extension cover. A gear shaft for meshingly connecting with the two racks on the extension cover is rotatably connected to the opposite inner walls of the fixed cover.

[0010] Preferably, a motor is fixedly connected to the inner top surface of the fixed cover, and two meshing spur gears are arranged. One of the spur gears is fixed on the main shaft of the motor, and the other spur gear is sleeved and fixed on the gear shaft.

[0011] Preferably, a vibration motor is fixedly connected to the surface of the cylinder body of the electric push rod.

[0012] Preferably, the insertion frame is inserted with the two electric telescopic rods, and the opposite inner side walls of the insertion frame are hollowed out and inserted with the insertion blocks.

[0013] Compared with the prior art, the advantages and positive effects of the utility model are as follows.

[0014] 1. In the utility model, by setting the connecting cover, activated carbon adsorbent is filled in the connecting cover for adsorption treatment when air passes through. Then, the electric push rod is used to drive the connecting cover to rise into the fixed cover. Then, the hot air blower arranged on the fixed cover is started to generate hot air, which passes through the activated carbon adsorbent in the connecting cover from top to bottom, so as to realize the drying of the wet activated carbon adsorbent, facilitate repeated use and ensure the adsorption effect.

[0015] 2. In the present utility model, by providing an extension cover and a vibration motor, the movement of the extension cover can expand the internal space of the connection cover, facilitating the reduction in the thickness of the filled activated carbon adsorbent and leveling it. Moreover, the vibration generated by the vibration motor can keep the leveled activated carbon adsorbent in a continuous shaking state, thereby facilitating the transfer of the activated carbon adsorbent at the bottom layer to the upper layer, making it easier to contact the hot air blower and accelerating the drying speed. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 FIG. is a schematic three-dimensional structure diagram of a purification device for carbon emission reduction proposed by the present utility model;

[0017] Figure 2 FIG. is a schematic structural diagram of a frame of a purification device for carbon emission reduction proposed by the present utility model;

[0018] Figure 3 FIG. is a purification device for carbon emission reduction proposed by the present utility model Figure 2 bottom view structural diagram;

[0019] Figure 4 is Figure 2 cross-sectional structural diagram;

[0020] Figure 5 is Figure 3 enlarged view at A in;

[0021] Figure 6 is Figure 4 enlarged view at B in.

[0022] Legend: 1. Purification box; 2. Frame; 3. Screw; 4. Connection cover; 5. Insertion frame; 6. Slide block; 7. Electric push rod; 8. Vibration motor; 9. Electric telescopic rod; 10. Insertion block; 11. Extension cover; 12. Fixed cover; 13. Hot air blower; 14. Gear shaft; 15. Movable cover; 16. Spring rod; 17. Motor; 18. Straight gear; 19. Elastic cloth; 20. Rack. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0023] In order to more clearly understand the above-mentioned objects, features, and advantages of the present utility model, the following further describes the present utility model with reference to the drawings and embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.

[0024] In the following description, many specific details are set forth to fully understand the present utility model. However, the present utility model can also be implemented in other ways different from those described herein. Therefore, the present utility model is not limited by the specific embodiments disclosed in the following specification.

[0025] Such as Figures 1-6As shown in the figure, a purification device for carbon emission reduction includes a purification box 1. Inside the purification box 1, a frame 2 is fixedly connected. On the upper surface of the frame 2, a number of connecting covers 4 for placing activated carbon adsorbents are embedded. One side of the connecting cover 4 is inserted with an extension cover 11, and the surfaces of both the connecting cover 4 and the extension cover 11 are hollowed out. During use, the activated carbon adsorbent is filled in the connecting cover 4 and the extension cover 11. When the dust-reduced air passes through the connecting cover 4 and the extension cover 11 from bottom to top, it is adsorbed and purified by the activated carbon adsorbent filled inside. Inside the purification box 1, two parallelly distributed screws 3 are rotatably connected, which are respectively arranged at the upper and lower positions of the frame 2. A slider 6 inserted into the inner wall of the purification box 1 is threadedly connected to the screw 3. The bottom surface of the slider 6 at the upper position is fixedly connected with a fixed cover 12. A hot air blower 13 is arranged on the top of the fixed cover 12, and one side of the fixed cover 12 is inserted with a movable cover 15. The inner side walls of the fixed cover 12 and the movable cover 15 are slidably connected to the outer side walls of the connecting cover 4 and the extension cover 11. By rotating the upper screw 3, the slider 6 threadedly connected thereto slides under the restriction inside the purification box 1, driving the fixed cover 12 to move above any connecting cover 4. By moving the movable cover 15, the space of the fixed cover 12 is expanded. Then the connecting cover 4 rises above the frame 2, and by sliding the extension cover 11 out, the activated carbon adsorbent filled inside can be paved flat, reducing the thickness. Then, the hot air generated by starting the hot air blower 13 on the fixed cover 12 passes through the extension cover 11 and the connecting cover 4 from top to bottom, realizing the drying of the activated carbon adsorbent filled inside. The top edge of the slider 6 at the lower position is flexibly connected with an electric push rod 7. The telescopic end of the electric push rod 7 is fixedly connected with two symmetrically arranged electric telescopic rods 9. The telescopic end of the electric telescopic rod 9 is fixedly connected with an insertion block 10. The outer bottom of the connecting cover 4 is fixedly connected with an insertion frame 5 inserted with the two insertion blocks 10. By rotating the lower screw 3, the lower slider 6 and the fixed cover 12 can be made to move at the same speed. By extending the electric push rod 7 on the lower slider 6, the two electric telescopic rods 9 enter the insertion frame 5, and by extending the electric telescopic rod 9, the insertion block 10 at the telescopic end is inserted into the side wall of the insertion frame 5, so that the connecting cover 4 connected to the insertion frame 5 can be lifted and lowered with the telescopic movement of the electric push rod 7.

[0026] In addition: A number of spring rods 16 are connected between the connecting cover 4 and the extension cover 11, and between the fixed cover 12 and the movable cover 15. An elastic cloth 19 is connected between the tops of the fixed cover 12 and the movable cover 15. The spring rods 16 between the connecting cover 4 and the extension cover 11 are in a completely contracted state under normal conditions, so that it is convenient to move and expand the extension cover 11 by applying a force to the extension cover 11 to overcome the pulling force of the spring rods 16. The spring rods 16 between the fixed cover 12 and the movable cover 15 are in a completely extended state under normal conditions. Therefore, when the upper slider 6 moves towards a number of connecting covers 4, due to the elastic elongation of the spring rods 16, the movable cover 15 will automatically move out relative to the fixed cover 12.

[0027] In addition: Two racks 20 are symmetrically and fixedly connected to the top of the outer cover of the extension cover 11. A gear shaft 14 for meshing with the two racks 20 on the extension cover 11 is rotatably connected to the opposite inner walls of the fixed cover 12. A motor 17 is fixedly connected to the inner top surface of the fixed cover 12 and two spur gears 18 that are meshed with each other are provided. One of the spur gears 18 is fixed on the main shaft of the motor 17, and the other spur gear 18 is sleeved and fixed on the gear shaft 14. When the two racks 20 on the surface of the extension cover 11 rise to mesh with the gear shaft 14, the spur gear 18 on the main shaft of the motor 17 is driven to rotate by the motor 17. Under the meshing connection, the other spur gear 18 drives the gear shaft 14 to rotate, so that the rack 20 in the meshing connection state drives the extension cover 11 to move against the pulling force of the spring rod 16.

[0028] In addition: A vibration motor 8 is fixedly connected to the surface of the cylinder block of the electric push rod 7. The insertion frame 5 is inserted into the two electric telescopic rods 9, and the opposite inner side walls of the insertion frame 5 are hollowed out and inserted with the insertion blocks 10. A rubber pad is provided between the bottom end of the cylinder block of the electric push rod 7 and the slider 6 for shock absorption. Therefore, when the vibration motor 8 is started, the electric push rod 7 drives the electric telescopic rod 9 to vibrate, and then the insertion block 10 in the inserted state drives the insertion frame 5 and the connection cover 4 to vibrate, so that the activated carbon adsorbent in the unfolded connection cover 4 and the extension cover 11 can be leveled under the vibration.

[0029] In addition, the two screw rods 3 in this solution rotate at the same speed. Combining Figure 1 , the end faces on the same side of the two screw rods 3 all extend outwards through the purification box 1. Sprockets are installed on the end faces of the two screw rods 3, and a chain is meshed between the two sprockets. By additionally installing a motor 17 to drive one of the sprockets to rotate, the other sprocket can be rotated under the action of the chain, so that the two screw rods 3 can rotate at the same speed.

[0030] Working principle: Activated carbon adsorbent is filled between the connection cover 4 and the extension cover 11. During normal use, the filled activated carbon adsorbent is used to adsorb and treat the passing air. When the activated carbon adsorbent is relatively wet, the two screw rods 3 rotate at the same speed to move the two sliders 6 to the upper and lower positions corresponding to the connection cover 4 at the same time. Then, the electric push rod 7 on the lower slider 6 extends, and the two electric telescopic rods 9 at the telescopic end enter the insertion frame 5 at the bottom surface of the connection cover 4. Then, the electric telescopic rod 9 extends to insert the insertion block 10 into the side of the insertion frame 5. Then, the electric push rod 7 extends to raise the connection cover 4 above the frame 2 and into the fixed cover 12, and the rack 20 meshes with the gear shaft 14. The rotation of the gear shaft 14 is used to drive the rack 20 to drive the extension cover 11 to extend. The vibration motor 8 is used to vibrate the connection cover 4, so as to level the internally filled activated carbon to reduce its thickness and keep it shaking continuously. The hot air generated by the hot air blower 13 passes through the activated carbon adsorbent from top to bottom, and the activated carbon adsorbent can be dried.

[0031] The wiring diagrams of the electric push rod 7, vibration motor 8, electric telescopic rod 9, hot air blower 13 and motor 17 in the present utility model belong to the common knowledge in the art, and their working principles are already known technologies. Their models are selected according to actual use. Therefore, the control methods and wiring arrangements of the electric push rod 7, vibration motor 8, electric telescopic rod 9, hot air blower 13 and motor 17 will not be explained in detail.

[0032] The above are only the preferred embodiments of the present utility model, and are not intended to limit the present utility model in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as they do not depart from the technical solution content of the present utility model, any simple modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present utility model still fall within the protection scope of the technical solution of the present utility model.

Claims

1. A purification device for carbon emission reduction, comprising a purification box (1), characterized in that: Inside the purification box (1), a frame (2) is fixedly connected. On the upper surface of the frame (2), several connecting covers (4) for placing activated carbon adsorbents are embedded. One side of the connecting cover (4) is plugged with an extension cover (11), and the surfaces of both the connecting cover (4) and the extension cover (11) are provided with hollow-outs. Inside the purification box (1), two parallelly distributed screws (3) are rotatably connected, which are respectively arranged at the upper and lower positions of the frame (2). A slider (6) inserted into the inner wall of the purification box (1) is threadedly connected to the screw (3). The bottom surface of the slider (6) at the upper position is fixedly connected with a fixed cover (12). A hot air blower (13) is arranged on the top of the fixed cover (12), and one side of the fixed cover (12) is plugged with a movable cover (15). The inner side walls of the fixed cover (12) and the movable cover (15) are slidably connected to the outer side walls of the connecting cover (4) and the extension cover (11). The top edge of the slider (6) at the lower position is flexibly connected with an electric push rod (7). The telescopic end of the electric push rod (7) is fixedly connected with two symmetrically arranged electric telescopic rods (9). The telescopic end of the electric telescopic rod (9) is fixedly connected with an insertion block (10). A socket frame (5) plugged with the two insertion blocks (10) is fixedly connected to the bottom of the outer cover of the connecting cover (4).

2. The purification device for carbon emission reduction according to claim 1, wherein: A number of spring rods (16) are connected between the connecting cover (4) and the extension cover (11), and between the fixed cover (12) and the movable cover (15).

3. The purification device for carbon emission reduction according to claim 1, characterized in that: An elastic cloth (19) is connected between the tops of the fixed cover (12) and the movable cover (15).

4. The purification device for carbon emission reduction according to claim 1, wherein: Two racks (20) are symmetrically and fixedly connected to the top of the outer cover of the extension cover (11). A gear shaft (14) for meshing with the two racks (20) on the extension cover (11) is rotatably connected to the opposite inner walls of the fixed cover (12).

5. The purification device for carbon emission reduction according to claim 4, characterized in that: A motor (17) is fixedly connected to the inner top surface of the fixed cover (12), and two meshing spur gears (18) are provided. One spur gear (18) is fixed on the main shaft of the motor (17), and the other spur gear (18) is sleeved and fixed on the gear shaft (14).

6. The purification device for carbon emission reduction according to claim 1, wherein: A vibration motor (8) is fixedly connected to the surface of the cylinder body of the electric push rod (7).

7. The purification device for carbon emission reduction according to claim 1, characterized in that: The socket frame (5) is plugged with the two electric telescopic rods (9), and the opposite inner side walls of the socket frame (5) are hollowed out and plugged with the insertion blocks (10).

Citation Information

Patent Citations

  • Purification device for carbon emission reduction

    CN220834767U